非磁性薄板磁冲击加工中绕组尺寸对磁芯感应系统电气参数的影响

R. Kryshchuk, I. Kondratenko, O. Karlov
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引用次数: 0

摘要

导电材料的塑性随着高密度电流的流过而改变。这种电塑性效应可用于消除焊缝的残余应力。本文研究了用感应系统降低5056、5083等非磁性铝合金薄板焊缝残余应力的方法。采用磁脉冲法,其原理是在焊缝中产生脉冲涡流。这项工作的目的是建立电学参数(电阻,电感)和焊接电流密度对绕组尺寸的依赖关系,以便在考虑绕组中导体的集肤效应和邻近效应的情况下获得最大的焊接电流密度或减少对电源的要求。采用有限元法对谐波电流模式和瞬态过程模式下的电磁场进行了数值计算。在谐波电流计算模式下,建立了绕组尺寸对电阻、电感、焊缝表面电流密度、绕组交直流电阻比系数的影响。还建立了绕组中脉冲电流的瞬态过程、感应系统焊缝中的电流密度与线圈及其导线的横截面尺寸的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Winding Dimensions on Electrical Parameters of the Induction System with a Magnetic Core for Magneto-Impulse Processing of Thin Non-Magnetic Metal Sheets
Plasticity of electrically conductive materials changes by flowing high-density currents through them. This electroplastic effect can be used to remove residual stresses of welds. In this article the induction system for decreasing residual stresses in welds of thin non-magnetic metal sheets of aluminum alloys 5056, 5083 and similar is investigated. The magneto-impulse method is used, which is based on inducing a pulsed eddy current in the weld. The aim of this work is to establish the dependence of electrical parameters (resistance, inductance) and current density in welds on the winding sizes in order to obtain the maximum current density in welds or reduce the requirements for a power source, taking into account skin and proximity effects of conductors in winding. The numerical calculation of the electromagnetic field by the finite element method in the mode of harmonic currents and in the mode of transient processes is used. The influence of winding sizes is established on resistance, inductance, current density of weld surface, AC/DC resistance ratio coefficient in winding in the calculation mode of harmonic currents. It also establishes the dependence of transient processes of pulsed current in winding, current density in weld of the induction system on cross-sectional dimensions of a coil and its wires.
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